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APPLYING GNSS & CORS TECHNOLOGY TO LAND DEVELOPMENT: A CADASTRAL PERSPECTIVE Dr. Dexter Davis Department of Geomatics Engineering & Land Management, UWI

APPLYING GNSS & CORS TECHNOLOGY TO LAND DEVELOPMENTsta.uwi.edu/conferences/11/landtenure/documents/Dext… ·  · 2011-06-14APPLYING GNSS & CORS TECHNOLOGY TO LAND DEVELOPMENT:

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Page 1: APPLYING GNSS & CORS TECHNOLOGY TO LAND DEVELOPMENTsta.uwi.edu/conferences/11/landtenure/documents/Dext… ·  · 2011-06-14APPLYING GNSS & CORS TECHNOLOGY TO LAND DEVELOPMENT:

APPLYING GNSS & CORS TECHNOLOGY TO LAND

DEVELOPMENT:

A CADASTRAL PERSPECTIVEDr. Dexter Davis

Department of Geomatics Engineering & Land Management, UWI

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OUTLINEOverviewGNSS & CORS EvolutionCadastral Considerations & ChallengesCadastral CriteriaInternational ExperiencesPotential BenefitsConclusion

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OVERVIEWTECHNOLOGICAL ADVANCES SOCIETAL IMPACT

GPS/GNSS is a maturing technology Gone beyond traditional hindrances

Cost, confusion about capabilities, geodesy, best practices etc

Accepted and embraced in engineering and topographic survey applications

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GNSS & CORS EVOLUTIONGlobal Positioning System (GPS)

US DoDReal Time Kinematic (RTK)

Base & Rover, radio link Global Navigation Satellite Systems (GNSS)

GLONASS, Galileo

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GNSS & CORS EVOLUTIONCORSVirtual Reference Station (VRS)

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GNSS & CORS EVOLUTIONWhere we are

GPSRTKGNSSCORS

o VRS

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CADASTRAL CONSIDERATIONSBase Station Location

Security & PowerClear skyviewRadio range/base distanceMultipath & interference free environment

VegetationWorking in forest/dense vegetation

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CADASTRAL CONSIDERATIONSEstablishing/Redefining boundaries

Observing ‘Found’ and setting out ‘Put’ ironsFinal positions

Topographic MappingRe-observing marksTopographic details to appear on plan

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CADASTRAL CONSIDERATIONSAtmospheric Conditions

Ionospheric influencesTroposhperic influences

Other Accuracy ConsiderationsWGS84 transformationsAntenna Phase Centre VariationsObstructions/Interferance factorsMask Angles

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CADASTRAL CHALLENGESLegislation

Use of hand-held GPS unitsAccuracy

Professional Buy-In

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CADASTRAL CRITERIASpeed

Outperform competing approaches Cost Effective

Reduce unit cost of surveyRelevant to local survey community

Technology & Cost

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CADASTRAL CRITERIAAccuracy

Matches legal specificationsSimple field operation

Process must allow for operations under variable field conditions

Digital Cadastral DatabaseRole towards the development of DCDB

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INTERNATIONAL EXPERIENCESNETHERLANDS

2000 RTK GPS introduced to measure cadastral boundaries – until then GPS used for control surveysIn 2002, in-depth study conducted to identify all of the possibilities and limitations and evaluate efficiency Technical, ergonomical, economical~ 25% of surveys done more efficientlyOverall efficiency is improved up to 30% based on skill of surveyor

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INTERNATIONAL EXPERIENCESNETHERLANDS

Ergonomic benefits Positive feeling - working with modern technologyProvided flexibility in choice of instrumentation for surveyors and management – most suitable instrument leads to efficiency improvementsCost (2002) only slightly more expensive than Total Station

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INTERNATIONAL EXPERIENCESMALAYSIA

Cadastral survey practice regulated by legislation that required traceable calibration for distance measurement technique‘Legal Traceability’ – (i) calibration and (ii) proceduresZero Baseline and EDM baseline calibration tests gave maximum discrepancies of 1.4 and 10mm respectivelyGPS network solutions computed baseline distances of approx 30km within standard allowable misclosures

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INTERNATIONAL EXPERIENCESMALAYSIA

Using Rapid Static technique with 10 min observation times, the coordinates of 6 lots were measures in an area less than 1haMeasuring the same points from two different GPS base stations gave RMS errors of 3mm in both easting and northingTotal difference in GPS computed area and national certified plans was 1m2

Effective tool to work alongside existing techniques

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INTERNATIONAL EXPERIENCESALBANIA

Two field tests carried out. In 1 agricultural village, 29 parcels were surveyed in 4 hours and 35 mins (excluding 40 mins set up time). Average agricultural parcel is 0.25ha In second village, 17 parcels in 1 hour and 15 mins covering 7.58 ha (average parcel size 0.4ha)Topographic detail – 20 houses and 153 planimetric features surveyed in 3 urban areas in just under 8 ½ hours of field observation

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INTERNATIONAL EXPERIENCESALBANIA

Productivity estimates GPS methods were 8 times faster in the field and almost 10 times faster w.r.t. office processing/presentation

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INTERNATIONAL EXPERIENCESAustraliaBelize NepalAustria ChinaKenya United States of America

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POTENTIAL BENEFITSSpeedAccuracyEfficiencyGeneral user wellbeingFramework for DCDBNational SDI

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CONCLUSIONGNSS can be an effective tool in cadastral surveyingSeveral potential benefitsWill not replace existing survey techniques, but can work alongside‘Best practice’ and calibration guidelines

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THANK YOUDr. Dexter Davis

Department of Geomatics Engineering & Land ManagementFaculty of Engineering

University of the West [email protected]

Page 24: APPLYING GNSS & CORS TECHNOLOGY TO LAND DEVELOPMENTsta.uwi.edu/conferences/11/landtenure/documents/Dext… ·  · 2011-06-14APPLYING GNSS & CORS TECHNOLOGY TO LAND DEVELOPMENT:

APPLYING GNSS & CORS TECHNOLOGY TO LAND

DEVELOPMENT:

A CADASTRAL PERSPECTIVEDr. Dexter Davis

Department of Geomatics Engineering & Land Management, UWI